Difference between revisions of "Interdisciplinary Literacy Assessment"

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|| No. Better see [[Dispersion and Attenuation Phenomena]].
|| No. Better see [[Dispersion and Attenuation Phenomena]].
+ It decreases modal dispersion.
+ It decreases modal dispersion.
|| Yes.
|| Yes. The continuous changing index of refraction means that light from different propagation modes will be refracted varying amounts thus bringing them back into synchrony so they propagate at the same speed.
- Infrared.
- It decrease profile dispersion.
|| Feedback for distractor.
|| No. Better see [[Dispersion_and_Attenuation_Phenomena#Profile_Dispersion]].
- Radiowaves.
- It uses more optimal carrier wavelengths.
|| Radiowaves have very long  wavelengths.
|| No. Please see [[Optical_Networks#Optical_fiber_and_telecommunication_wavelengths]].


</quiz>
</quiz>

Revision as of 14:36, 16 November 2009

In 2009 CMDITR began a process of defining what is critical in interdisciplinary education for its particular domain. A series of interviews and surveys was used to generate a comprehensive outline of the interdisciplinary core content. This serves as the specification for a series diagnostic quizzes that server as portals to the wiki. The idea is that students would take a quiz and then link to the appropriate material that will teach or reteach the identified concept.

Example <quiz display=simple> {How does a graded index optical fiber reduce losses? |type="()"} - It makes it more transparent. || No. Better see Dispersion and Attenuation Phenomena. + It decreases modal dispersion. || Yes. The continuous changing index of refraction means that light from different propagation modes will be refracted varying amounts thus bringing them back into synchrony so they propagate at the same speed. - It decrease profile dispersion. || No. Better see Dispersion_and_Attenuation_Phenomena#Profile_Dispersion. - It uses more optimal carrier wavelengths. || No. Please see Optical_Networks#Optical_fiber_and_telecommunication_wavelengths.

</quiz>